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采用半导体振荡器和温度调节敷贴器的微波辐射系统对培养细胞进行常温条件下微波辐射的效果。

Effects of Normothermic Conditioned Microwave Irradiation on Cultured Cells Using an Irradiation System with Semiconductor Oscillator and Thermo-regulatory Applicator.

机构信息

Faculty of Pharmaceutical Sciences, Osaka University of Pharmaceutical Sciences, 4-20-1 Nasahara, Takatsuki, Osaka 569-1094, Japan.

Faculty of Engineering, Chubu University, 1200 Matsumoto-cho, Kasugai, Aichi 487-8501, Japan.

出版信息

Sci Rep. 2017 Feb 1;7:41244. doi: 10.1038/srep41244.

Abstract

We investigated the effects of microwave irradiation under normothermic conditions on cultured cells. For this study, we developed an irradiation system constituted with semiconductor microwave oscillator (2.45 GHz) and thermos-regulatory applicator, which could irradiate microwaves at varied output powers to maintain the temperature of cultured cells at 37 °C. Seven out of eight types of cultured cells were killed by microwave irradiation, where four were not affected by thermal treatment at 42.5 °C. Since the dielectric properties such as ε', ε" and tanδ showed similar values at 2.45 GHz among cell types and media, the degree of microwave energy absorbed by cells might be almost the same among cell types. Thus, the vulnerability of cells to microwave irradiation might be different among cell types. In HL-60 cells, which were the most sensitive to microwave irradiation, the viability decreased as irradiation time and irradiation output increased; accordingly, the decrease in viability was correlated to an increase in total joule. However, when a high or low amount of joules per minute was supplied, the correlation between cellular viability and total joules became relatively weak. It is hypothesized that kinds of cancer cells are efficiently killed by respective specific output of microwave under normothermic cellular conditions.

摘要

我们研究了在常温条件下微波辐射对培养细胞的影响。为此,我们开发了一种由半导体微波振荡器(2.45GHz)和温度调节敷贴器组成的辐射系统,该系统可以以不同的输出功率辐射微波,以将培养细胞的温度维持在 37°C。在微波辐射下,八种类型的培养细胞中有七种被杀死,其中四种不受 42.5°C 热疗的影响。由于细胞类型和培养基在 2.45GHz 下的介电特性(如 ε'、ε" 和 tanδ)具有相似的值,因此细胞吸收的微波能量的程度在细胞类型之间可能几乎相同。因此,细胞对微波辐射的敏感性可能因细胞类型而异。在对微波辐射最敏感的 HL-60 细胞中,随着辐照时间和辐照输出的增加,细胞活力降低;因此,活力的降低与总焦耳数的增加相关。然而,当每分钟供应大量或少量焦耳时,细胞活力与总焦耳之间的相关性变得相对较弱。假设在常温细胞条件下,通过各自特定的微波输出可以有效地杀死各种癌细胞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c777/5286535/af29d34986b2/srep41244-f1.jpg

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